首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 578 毫秒
1.
Conversion of cropland to forestry and grassland is an important method to reduce soil erosion and improve the biophysical environment in the Loess Plateau. The feasibility, methods, and environmental effects of cropland conversion were studied based on 11 typical watersheds of national experimental bases instead of different geographic areas of the Loess Plateau. Between 1986 and 2000,cropland, sloping cropland and non-agricultural land decreased by 8%, 92.5% and 8% respectively,while forestry increased by 15.7%. The land use change not only decreased annual soil erosion by 74%, but also increased vegetation coverage by 100% and improved the soil condition and biodiversity. This can be achieved by building basic farmland, increasing capital and scientific input,and planting trees and grasses according to the natural biophysical restrictions.  相似文献   

2.
1 Introduction The soilerosion in Loess Plateau is mostserious on the globe mainly due to the destroying of naturalvegetation and cultivation on slope land overextensive areas(Yang and Yu,1992;Jiang, 1997).To convertsloping cropland (cropped land on slope…  相似文献   

3.
The spatio-temporal characteristics of net primary productivity (NPP) since implementation of the Grain to Green Program (GTGP) are important for understanding ecological restoration of the Loess Plateau in China. Here, we conduct spatio-temporal analysis of NPP using MODIS datasets (500 m, 8-day intervals) and VPM (Vegetation Photosynthesis Model) from 2000-2015. We found that NPP on the Loess Plateau increased significantly from 2000 to 2015 (p<0.05). Significant increases in NPP were observed in core areas of the GTGP, including northern Shaanxi and Lüliang Mountain in Shanxi. NPP in alluvial plains decreased due to urban expansion into cropland. Significant increases in NPP from 2006-2010 were located north of the area of change in 2000-2005. NPP increased across three vegetation types and four slope gradients. In hilly-gully regions prone to soil erosion, such as central and southeastern parts of the Loess Plateau, obvious vegetation restoration was detected.  相似文献   

4.
Developing an effective approach to rapidly assess the effects of restoration projects on soil erosion intensity and their extensive spatial and temporal dynamics is important for regional ecosystem management and the development of soil conservation strategies in the future. This study applied a model that was developed at the pixel scale using water soil erosion indicators (land use, vegetation coverage and slope) to assess the soil erosion intensity in the Loess Plateau, China. Landsat TM/ETM+ images in 2000, 2005 and 2010 were used to produce land use maps based on the object-oriented classification method. The MODIS product MOD13Q1 was adopted to derive the vegetation coverage maps. The slope gradient maps were calculated based on data from the digital elevation model. The area of water soil-eroded land was classified into six grades by integrating slope gradients, land use and vegetation coverage. Results show that the Grain-To-Green Project in the Loess Plateau worked based on the land use changes from 2000 to 2010 and enhanced vegetation restoration and ecological conservation. These projects effectively prevented soil erosion. During this period, lands with moderate, severe, more severe and extremely severe soil erosion intensities significantly decreased and changed into less severe levels, respectively. Lands with slight and light soil erosion intensities increased. However, the total soil-eroded area in the Loess Plateau was reduced. The contributions of the seven provinces to the total soil-eroded area in the Loess Plateau and the composition of the soil erosion intensity level in each province are different. Lands with severe, more severe and extremely severe soil erosion intensities are mainly distributed in Qinghai, Ningxia, Gansu and Inner Mongolia. These areas, although relatively small, must be prioritised and preferentially treated.  相似文献   

5.
Evaluation of the ecological effects of eco-compensation policies helps analyze policy rationality and feasibility and provides scientific and practical bases for perfecting eco-compensation systems. Taking the key ecological function area of the Loess Plateau, China as a case study, we have evaluated ecosystem responses to the Grain-for-Green Project that commenced in 1999. Six indicators were selected to assess changes in ecosystem structure, quality and function. The results showed that implementation of the Grain-for-Green Project has reduced sloping cropland by 1571 km2 and increased ecological land by 1337 km2. The increase in ecological land alters ecosystem structures across the study area and the decline in sloping cropland reduces farming activity interference; both of these are conducive to the restoration of natural vegetation. From 2000 to 2010, the vegetation cover of grassland, desert and forest ecosystems increased 10.89%, 8.34% and 4.24% respectively and average NPP rose 51%, with an average annual growth rate of around 5%. This indicates that eco-compensation has promoted the improvement of ecosystem quality. Total biomass of ecosystems increased two times on average from 2000 to 2010, meaning that the carbon sequestration capacity of ecosystems also increased. The reduction in the area of water loss and soil erosion and the increase in retained runoff by forests indicate an improvement in ecosystem function and services on the Loess Plateau.  相似文献   

6.
黄土丘陵沟壑区典型小流域土地持续利用案例研究   总被引:24,自引:5,他引:24  
本文选择我国水土流失最为严重的黄土丘陵沟壑区作为研究地区,通过野外调查、土地利用填图,结合区域国民经济发展规划提出了4种基本土地利用规划方案附加2种保护性耕作措施;开展了生态适宜性、经济可行性和社会可接受性评价。提出:在得到大量外部经济支持的前提下,应积极实行15°以上的坡耕地全部退耕还林还草的方案,其中在中等坡度的地区(15°-25°)应发展果园和经济林;若缺少外部强有力的经济支持,该区土地利用调整应逐步开展,短期内(约0-5年),建议坡度大于25°的坡耕地逐步退耕还林还草,其中,坡度大于25°,地形条件较好的地区应种植果园和经济林;中期(约5-10年),坡度大于20°的黄土地区应逐步退耕还林还草,其中坡度介于20°-25°之间的地区应转变为果园和经济林;10年之后,建议大于15°的坡耕地全部转变为其他用途,其中坡度介于15°-25°的黄土地区应转变为果园和经济林,坡度大于25°的地区转变为林地/灌丛和草地  相似文献   

7.
黄土高原水土流失区生态退耕对粮食安全的影响   总被引:11,自引:0,他引:11  
刘贤赵  宿庆 《山地学报》2006,24(1):7-12
退耕还林是黄土高原水土流失区改善生态环境的一种有效途径,但在一定程度上必然会影响到区域的粮食安全,其中最直接最主要的影响便是退耕带来耕地面积减少,引发粮食总产量的降低。根据黄土高原水土流失区的生态退耕规划,对退耕还林还草可能对当地造成的粮食生产影响进行分析。利用具有显著科学性和可操作性的最小人均耕地面积和耕地压力指数模型,对该区各亚区进行了粮食安全评价,并以此为基础提出了黄土高原水土流失区各亚区退耕还林还草与粮食安全的协调途径。  相似文献   

8.
郑兴年  王乃斌 《地理学报》1993,48(2):161-170
本文利用遥感技术通过典型区的分析,对黄土高原土地退化现状及其成因过程进行了深入研究。结果表明,黄土高原地区由于特殊的自然条件,加以长期人类活动影响,土地退化十分严重,并处于不断发展之中,主要表现为水土流失和土地沙化等。  相似文献   

9.
黄土高原典型地区土壤侵蚀共性与特点   总被引:19,自引:1,他引:19  
通过对黄土高原典型地区土壤侵蚀以往的研究结论进行综合分析,在比较土壤侵蚀相似性和差异性的基础上,对这些典型地区土壤侵蚀的共性与特点进行了研究,结果表明:1、黄土高原典型地区土壤侵蚀影响因素有降雨、地形及土地利用;2、黄土高原各典型地区主要侵蚀类型为水蚀及重力侵蚀;主要侵蚀发生时间为汛期;主要侵蚀空间分布特征为具有垂直分带性;3、绥德地区侵蚀产沙强烈,天水地区侵蚀相对轻微,安塞地区各种侵蚀特征典型。西峰地区土壤侵蚀特殊。  相似文献   

10.
基于遥感调查数据集定量分析了1990—2015年中国黄土高原地区耕地的时空变化特征和口粮绝对安全最小耕地保障面积的数量变化。结果表明:黄土高原耕地面积从1990年的192 529.65 km2至2015年的182 688.50 km2,净减少了9 841.14 km2,幅度达5.11%,其中2000—2010年的减幅最大,净减少8 483.00 km2;较大的耕地动态变化图斑主要分布于中部和西部区域,细碎的变化图斑广泛分布;耕地地类转出面积(31 875.82 km2)大于转入面积(21 815.25 km2),耕地面积的增加主要由草地和林地转化而来,主要分布在灌溉农业区和东南部平原区,减少的耕地主要转化为草地和林地,主要分布在中部沟壑区的雨养农业区。此外,该时期耕地转化为建筑用地和交通用地等人工表面的面积逐渐增加,主要分布在东南部低海拔平原地区;黄土高原口粮绝对安全所需最小耕地保障面积呈明显减少特征(从1990年的70 913.37 km2下降到2015年的33 981.64 km2),占该区耕地总面积比例呈明显缩减态势(从1990年的36.83%缩减到2015年的18.60%),目前耕地总量的净减少未对口粮绝对安全的耕地保障数量造成大的影响。  相似文献   

11.
黄土丘陵区林区开垦地土壤退化研究   总被引:4,自引:2,他引:4  
以林地及其开垦地土壤颗粒组成、有机质含量、>0 .2 5mm水稳性团粒含量、土壤容及土壤抗强度等性质为基础 ,分析比较了林地及林地开垦后侵蚀 10年内土壤退化问题。研究结果表明 ,林地一旦开垦后随侵蚀年限的增长 ,土壤性质逐年退化 :侵蚀 10年土壤粘粒和物理性粘粒比林地分别减少 2 .74 %和 3.0 1% ,粗粉粒增加 ,土壤颗粒组成粗化 ;有机质含量从林地的 4 5 .2 g/kg下降到侵蚀 10年开垦地的 9.8g/kg ,>0 .2 5mm水稳性团粒含量从林地的 6 0 .19%下降到侵蚀第 10年开垦地的 2 8.6 0 % ,土壤容重增大 ,土壤的抗剪强度从 0 .12 3kg/cm3 下降到0 .0 74kg/cm3 ;并将林地和开垦地土壤性质与土壤侵蚀强度进行相关分析发现 ,>0 .2 5mm水稳性团粒含量对土壤侵蚀强度影响最大 ,偏相关系数为 0 .972 8,其次为土壤粗粉粒和抗剪强度 ,偏相关系数为 0 .8879和 0 .6 0 2 0 ,说明了林地开垦后侵蚀土壤的退化 ,恶化了土壤侵蚀环境 ,造成土壤侵蚀更易发生 ,加剧着土壤侵蚀强度 ,表明恢复和重建森林植被在防治黄土高原土壤侵蚀中具有举足轻重的作用  相似文献   

12.
The capacity of soil and water conservation measures, defined as the maximum quantity of suitable soil and water conservation measures contained in a region, were determined for the Loess Plateau based on zones suitable for establishing terraced fields, forestland and grassland with the support of geographic information system (GIS) software. The minimum possible soil erosion modulus and actual soil erosion modulus in 2010 were calculated using the revised universal soil loss equation (RUSLE), and the ratio of the minimum possible soil erosion modulus under the capacity of soil and water conservation measures to the actual soil erosion modulus was defined as the soil erosion control degree. The control potential of soil erosion and water loss in the Loess Plateau was studied using this concept. Results showed that the actual soil erosion modulus was 3355 t?km-2?a-1, the minimum possible soil erosion modulus was 1921 t?km-2?a-1, and the soil erosion control degree was 0.57 (medium level) in the Loess Plateau in 2010. In terms of zoning, the control degree was relatively high in the river valley-plain area, soil-rocky mountainous area, and windy-sandy area, but relatively low in the soil-rocky hilly-forested area, hilly-gully area and plateau-gully area. The rate of erosion areas with a soil erosion modulus of less than 1000 t?km-2?a-1 increased from 50.48% to 57.71%, forest and grass coverage rose from 56.74% to 69.15%, rate of terraced fields increased from 4.36% to 19.03%, and per capita grain available rose from 418 kg?a-1 to 459 kg?a-1 under the capacity of soil and water conservation measures compared with actual conditions. These research results are of some guiding significance for soil and water loss control in the Loess Plateau.  相似文献   

13.
黄土丘陵小流域土地利用变化对水土流失的影响   总被引:80,自引:3,他引:80  
傅伯杰  邱扬  王军  陈利项 《地理学报》2002,57(6):717-722
在土壤侵蚀模型LISEM (Limburg Soil Erosion Model) 校正的基础上,模拟了陕北黄土丘陵沟壑区大南沟小流域5种土地利用方案的水土流失效应,旨在探讨土地利用变化对流域出口水土流失的影响。研究结果表明:流域出口的洪峰流速、径流总量和侵蚀总量的大小顺序为:1975年>1998年>25度退耕>20度退耕>15度退耕。1975年和1998年25度以上的陡坡耕地和休闲地均退耕还林还草,这2种土地利用格局的径流和侵蚀模拟值都显著大于3种退耕方案。在3种退耕方案中,20度和15度以上的陡坡耕地和休闲地逐步转变为果园/经济林地,3种退耕方案之间的水土流失差异不显著。相对于1975年土地利用来说,1998年土地利用能降低洪峰流速、径流量和侵蚀量约5%~10%;3种退耕方案的减流减沙效益更加显著,可以降低洪峰流速、径流量和侵蚀量约40%~50%。  相似文献   

14.
Soil erosion and management on the Loess Plateau   总被引:6,自引:3,他引:3  
1 Introduction The Loess Plateau situated in northern China covers the drainage basins in the middle reaches of the Yellow River. It starts from the western piedmont of Taihang Mountains in the east, reaches the eastern slope of the Wushao and Riyue mountains, connects the northern part of the Qinling Mountains in the south and borders the Great Wall in the north, covering an area of about 380,000 km2 (Figure 1). The region is overlain extensively by Quaternary loess in great thickness, …  相似文献   

15.
Soil erosion and management on the Loess Plateau   总被引:1,自引:0,他引:1  
The Loess Plateau is well known to the world for its intense soil erosion. The root cause for river sedimentation of Yellow River (Huanghe) and its resultant "hanging river" in certain section is soil and water loss on the Loess Plateau. The Loess Plateau has a long cultivation history, hence population growth, vegetation degeneration and plugging constitute the chief reason for serious soil and water loss on Loess Plateau. This paper analyses several successful cases and failures in soil conservation, presents practical soil conservation technique and related benefit analysis, and discusses some effective methods adopted in China in soil erosion control, research directions and future perspectives on Loess Plateau.  相似文献   

16.
黄土高原侵蚀环境与侵蚀速率的初步研究   总被引:27,自引:2,他引:25  
黄土高原的侵蚀是一个地质过程.晚更新世以前高原已经过三个大的侵蚀堆积旋迥,主要沟谷系统和黄土地貌的塬梁峁格局已经形成.全新世以来黄土的堆积逐渐减缓,而侵蚀则进入新的发展时期.在自然因素和人类活动的共同作用下,土壤侵蚀加剧.根据侵蚀一堆积相关原理,利用黄河下游不同时期发育的冲积扇沉积模式,估算了全新世以来自然侵蚀速牵为7.9%,由于人类活动而引起的加速侵蚀的速率逐渐递增,至今已达到25%.  相似文献   

17.
黄土高原小流域土地利用优化调控   总被引:2,自引:0,他引:2  
At present, land use optimization at small watershed scale is the key measure to control soil erosion, restore the eco-environment and improve the farmers’ living standard on the Loess Plateau, China. Based on the land use survey maps of 1966, 1988, 1997, 2003 and the digital topographic map of 1984 in Yangou watershed, and assisted by spatial techniques of GIS, the basic characteristics and driving forces of land use change in Yangou watershed are analyzed. According to the summarization of land-use optimization characteristics since 1997, and with the help of continuous monitoring data for years and farmer investigation data, this paper appraises eco-environmental benefits, economic benefits and sustainability of Yangou watershed. We have used sediment reduction benefits, coverage ratio of permanent vegetation, per capita food production and per capita income of farmers as indices. The results show that Yangou watershed project has successfully controlled the soil and water loss and the farmers’ living standard has been improved markedly by reasonable adjustment to land use structure. The benefit of sediment reduction is higher than 80% and the coverage ratio of permanent vegetation reaches 61.03%. In 2006, the per capita income increased by 1493 yuan compared with the year 1998. The successful measures and experiences of Yangou watershed are worth promoting on the Loess Plateau.  相似文献   

18.
XU Yong  TANG Qing 《地理学报》2009,19(5):577-586
At present, land use optimization at small watershed scale is the key measure to control soil erosion, restore the eco-environment and improve the farmers’ living standard on the Loess Plateau, China. Based on the land use survey maps of 1966, 1988, 1997, 2003 and the digital topographic map of 1984 in Yangou watershed, and assisted by spatial techniques of GIS, the basic characteristics and driving forces of land use change in Yangou watershed are analyzed. According to the summarization of land-use optimization characteristics since 1997, and with the help of continuous monitoring data for years and farmer investigation data, this paper appraises eco-environmental benefits, economic benefits and sustainability of Yangou watershed. We have used sediment reduction benefits, coverage ratio of permanent vegetation, per capita food production and per capita income of farmers as indices. The results show that Yangou watershed project has successfully controlled the soil and water loss and the farmers’ living standard has been improved markedly by reasonable adjustment to land use structure. The benefit of sediment reduction is higher than 80% and the coverage ratio of permanent vegetation reaches 61.03%. In 2006, the per capita income increased by 1493 yuan compared with the year 1998.The successful measures and experiences of Yangou watershed are worth promoting on the Loess Plateau.  相似文献   

19.
黄河中游土壤侵蚀与下游古河道三角洲演化的过程响应   总被引:10,自引:7,他引:10  
根据黄土高原土壤侵蚀的周期特点,结合华北平原古河道,古三角洲的演化过程,应用泥沙输移的过程响应,分析了晚更新世以来黄河中游黄土高原土壤侵蚀与下游古河道,三角洲演化的关系,在人类历史之前,黄土高原土壤侵蚀基本上遵循自在生态环境演化规律,强裂侵蚀期发生在干冷向湿湿气候转化的过渡期,在强裂侵蚀的初期是古道形成期,强烈侵蚀期发生在干冷向温湿气候转化的过渡期,在强裂侵蚀的期是古河道形成期,强烈侵蚀的外营力迭加了人为作用,黄河下游河游泳以改道,三角洲横向扩展发生在强烈侵蚀的衰退期,人类历史时期,土壤侵蚀的外营力迭加了人为作用,破坏了地质历史时期的规律性,土壤侵蚀强度越来越强,基本上按照旱涝变化频率而演化,干冷期降雨不均匀系数增加,土训侵蚀加重,径流量较少,河床以淤积为主,是古河道形成期,正常年黄河泥少输移比接近于一,是三角洲进积期,温湿期降雨量增加,径流量加大,下游河流改道,三角洲横向发展。  相似文献   

20.
黄土高原土壤侵蚀规律研究工作回顾   总被引:16,自引:1,他引:16  
陈永宗 《地理研究》1987,6(1):76-85
1950年以来,黄土高原土壤侵蚀规律研究工作已建立了完整的分类系统,进行了侵蚀区划,查明了黄河泥沙及其中的粗泥沙来源。定量评价了各自然因子和人为因子与侵蚀量的关系。黄河自古多沙,而近期更加强烈。指出了过去研究工作中的主要问题。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号